Wastewater treatment using low cost activated carbons derived from agricultural byproducts - A case study

被引:212
作者
Mohan, Dinesh [1 ]
Singh, Kunwar R. [1 ]
Singh, Vinod K. [1 ]
机构
[1] Ind Toxicol Res Ctr, Div Environm Chem, Lucknow 226001, Uttar Pradesh, India
关键词
adsorption; activated carbons; COD removal; water/wastewater treatment; rice husk; coconut shells; coconut shell fibers;
D O I
10.1016/j.jhazmat.2007.07.079
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A variety of low cost activated carbons were developed from agricultural waste materials viz., coconut shell, coconut shell fibers and rice husk. The low cost activated carbons were fully characterized and utilized for the remediation of various pollutants viz., chemical oxygen demand (COD), heavy metals, anions, etc., from industrial wastewater. Sorption studies were carried out at different temperatures and particle sizes to study the effect of temperatures and surface areas. The removal of chloride and fluoride increased with rise in temperature while COD and metal ions removal decreased with increase in temperature, thereby, indicating the processes to be endothermic and exothermic, respectively. The kinetics of COD adsorption was also carried out at different temperatures to establish the sorption mechanism and to determine various kinetic parameters. The COD removal was 47-72% by coconut shell fiber carbon (ATFAC), 50-74% by coconut shell carbon (ATSAC) and 45-73% by rice husk carbon (ATRHC). Furthermore, COD removal kinetics by rice husk carbon, coconut shell carbon and coconut fiber carbon at different temperatures was approximately represented by a first order rate law. Results of this fundamental study demonstrate the effectiveness and feasibility of low cost activated carbons. The parameters obtained in this study can be fully utilized to establish fixed bed reactors on large scale to treat the contaminated water. (C) 2007 Published by Elsevier B.V.
引用
收藏
页码:1045 / 1053
页数:9
相关论文
共 50 条
[1]   Use of some natural and waste materials for waste water treatment [J].
Ahsan, S ;
Kaneco, S ;
Ohta, K ;
Mizuno, T ;
Kani, K .
WATER RESEARCH, 2001, 35 (15) :3738-3742
[2]  
Amuda OS, 2006, AFR J BIOTECHNOL, V5, P1483
[3]   Performance optimization of coagulant/flocculant in the treatment of wastewater from a beverage industry [J].
Amuda, OS ;
Amoo, IA ;
Ajayi, OO .
JOURNAL OF HAZARDOUS MATERIALS, 2006, 129 (1-3) :69-72
[4]  
[Anonymous], 1975, PROGR SURFACE MEMBRA
[5]  
[Anonymous], 1999, Standard Methods for Examination of Water and Waste Water
[6]   Pecan shell-based granular activated carbon for treatment of chemical oxygen demand (COD) in municipal wastewater [J].
Bansode, RR ;
Losso, JN ;
Marshall, WE ;
Rao, RM ;
Portier, RJ .
BIORESOURCE TECHNOLOGY, 2004, 94 (02) :129-135
[7]   Adsorption of gases in multimolecular layers [J].
Brunauer, S ;
Emmett, PH ;
Teller, E .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1938, 60 :309-319
[8]   Nanofiltration of textile plant effluent for color removal and reduction in COD [J].
Chakraborty, S ;
Purkait, MK ;
DasGupta, S ;
De, S ;
Basu, JK .
SEPARATION AND PURIFICATION TECHNOLOGY, 2003, 31 (02) :141-151
[9]   SOLVENT REGENERATION OF ACTIVATED CARBON [J].
COONEY, DO ;
NAGERL, A ;
HINES, AL .
WATER RESEARCH, 1983, 17 (04) :403-410
[10]   REMOVAL OF DISSOLVED ORGANIC-CARBON USING GRANULAR ACTIVATED CARBON [J].
CRITTENDEN, JC ;
VAITHEESWARAN, K ;
HAND, DW ;
HOWE, EW ;
AIETA, EM ;
TATE, CH ;
MCGUIRE, MJ ;
DAVIS, MK .
WATER RESEARCH, 1993, 27 (04) :715-721